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Microstructural evolution and rheological behaviour of aluminium alloys A356, and A356 + 0.5% Sn designed for thixocasting

机译:专为触变铸造设计的铝合金A356和A356 + 0.5%Sn的组织演变和流变行为

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摘要

One of the most important parameters in any thixoforming process is the viscosity of the semi-solid raw material. The reduction of the value of this property contributes towards a more complete filling of thin mould sections and decreases the incidence of defects. The present work deals with the influence of Sn on the viscosity of an A356 alloy (Al7SiO3 Mg) in the semi-solid state (SSS). A thermomechanical treatment was employed in order to obtain a non-dendritic microstructure, and the A356-base composition was modified by adding 0.5% Sn to the alloy. Thus, two A356 alloys, one conventional and the other containing Sn were compared in terms of microstructural evolution in the semi-solid state at a solid fraction of 0.5 and up to 3600 s soaking time. Solid fraction, particle size, contiguity and shape factor were measured by optical microscopy. Wettability was evaluated by separately dipping an Al-1.5% Si plate in am Al-12% Si and in an Al-12% Si-1% Sn baths (thus simulating the solid and the liquid phases of the A356 and A356 + Sn alloys, at 580℃, respectively) and measuring the grain boundary penetration by the liquid. Rheology was measured with a Searle type viscosimeter and by the back-extrusion technique. It was shown that Sn increases the wettability without interfering in the morphology and coarsening rate of the solid phase. In addition, it reduces considerably the viscosity and thixotropy of the A356 alloy, leading to better flow behaviour.
机译:在任何触变性成型过程中,最重要的参数之一是半固体原料的粘度。该性能值的降低有助于薄模具部分的更完全填充,并减少缺陷的发生。目前的工作涉及锡对半固态(SSS)的A356合金(Al7SiO3 Mg)粘度的影响。为了获得非枝晶的微观结构,采用了热机械处理,并且通过向合金中添加0.5%的锡来改性A356基组成。因此,比较了两种A356合金,一种是常规合金,另一种是含Sn合金,其半固态在0.5的固含量和最多3600 s的保温时间下的微观结构演变方面得到了比较。通过光学显微镜测量固体分数,粒度,邻接度和形状因子。通过将Al-1.5%Si板分别浸入Al-12%Si和Al-12%Si-1%Sn镀液中(从而模拟A356和A356 + Sn合金的固相和液相)来评估润湿性,分别在580℃下)并测量液体对晶界的渗透。用Searle型粘度计和后挤出技术测量流变学。结果表明,Sn在不影响固相的形态和粗化率的情况下提高了润湿性。另外,它大大降低了A356合金的粘度和触变性,从而带来了更好的流动性能。

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